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    • 5. 发明授权
    • Compression apparatus for molding, injection compression molding machine, and injection compression molding method using the compression device
    • 压缩成型用压缩机,注射压缩成型机以及使用压缩装置的注射压缩成形法
    • US06248281B1
    • 2001-06-19
    • US09308131
    • 1999-05-28
    • Tomokazu AbeTsuneo Matsui
    • Tomokazu AbeTsuneo Matsui
    • B29C3320
    • B29C45/561B29C2045/564B29C2045/5665
    • A compression apparatus for molding which applies uniform compression force to molten resin, and facilitates downsizing of the overall compression apparatus and attachment of the compression apparatus to a molding machine. Also, an injection compression molding machine and an injection compression molding method which use the compression apparatus for molding are disclosed. The compression apparatus is disposed in the rear of the movable mold of a die of a molding machine in which the movable mold is advanced toward the stationary mold of the die in order to apply compression force to the charged molten resin, to thereby mold the molten resin. The compression apparatus has a function of generating a pressing force for pushing the movable mold toward the stationary mold. The compression apparatus includes first and second slant members and having respective slant faces and in surface contact with each other. The slant members are advanced toward the slant members in order to generate pressing fore. A plurality of slant members moving in the same direction are engaged with each other via a single interlock plate. This configuration enables synchronized movements of all the slant members. In addition, since the weight and size of the synchronization mechanism are decreased, attachment to the molding machine is facilitated. Further, slant portions moving in different directions are provided. Slant portions moving in the same direction are engaged with each other via the interlock plate, and slant portions moving in different directions are engaged with each other via a link. The employment of the above-described structure enables the object of the present invention to achieve more effectively.
    • 一种用于模制的压缩装置,其对熔融树脂施加均匀的压缩力,并且有助于整体压缩装置的小型化以及将压缩装置连接到成型机。 另外,公开了一种使用成型用压缩装置的注射压缩成型机和注射压缩成型方法。 压缩装置设置在成型机的模具的可动模具的后部,其中可动模具朝向模具的固定模具前进,以便对带电的熔融树脂施加压缩力,从而将熔融的 树脂。 压缩装置具有产生用于将可动模推向固定模的按压力的功能。 压缩装置包括第一和第二倾斜构件并且具有相应的倾斜面并且彼此表面接触。 倾斜构件朝着倾斜构件前进,以便产生压制。 沿相同方向移动的多个倾斜构件通过单个互锁板彼此接合。 该配置使得所有倾斜构件能够同步移动。 此外,由于同步机构的重量和尺寸减小,因此便于连接到成型机。 此外,设置沿不同方向移动的倾斜部。 沿相同方向移动的倾斜部分通过互锁板彼此接合,并且沿不同方向移动的倾斜部分经由连杆彼此接合。 通过采用上述结构,能够更有效地实现本发明的目的。
    • 8. 发明授权
    • Method for producing laminated moldings
    • 层压成型品的制造方法
    • US06331263B1
    • 2001-12-18
    • US09179762
    • 1998-10-27
    • Tomokazu AbeSatoshi MatsumotoToshifumi Shimazaki
    • Tomokazu AbeSatoshi MatsumotoToshifumi Shimazaki
    • B29C4556
    • B29C45/14778
    • A method of producing a laminated structural molding formed from molded resin and an outer layer of facing material. The method comprises the step of initially placing the facing material in a mold. Molten resin is injected into the mold. The resin is spread throughout the mold by locating mold sections adjacent each other at a set compressive force. The partially assembled molding is then subjected to a cooling process in which the compressive force to which the molding is exposed is reduced so that the force is greater than zero but less than the compressive force used to spread the resin. The mold sections do not retract or move during the reduction in the compressive force. The cooling process is performed just before or after the completion of the spreading of the resin. In this way, the damage to the facing material of the molding is kept to a minimum.
    • 一种由模制树脂和面层材料的外层形成的层压结构模制品的制造方法。 该方法包括首先将面材置于模具中的步骤。 将熔融树脂注入模具中。 通过以设定的压缩力将模具部分彼此相邻定位,将树脂分布在整个模具中。 然后对部分组装的模制件进行冷却过程,其中模制品暴露的压缩力减小,使得力大于零但小于用于铺展树脂的压缩力。 在减小压缩力期间,模具部分不缩回或移动。 在完成树脂铺展之前或之后进行冷却过程。 以这种方式,将模制品的面料材料的损坏保持在最低限度。
    • 9. 发明申请
    • THERMOPLASTIC ELASTOMER COMPOSITION FOR CORE-BACK SYSTEM FOAM INJECTION MOLDING AND FOAM INJECTION MOLDING METHOD USING THE SAME
    • 用于核心系统泡沫注射成型和泡沫注射成型方法的热塑性弹性体组合物
    • US20090108485A1
    • 2009-04-30
    • US12344915
    • 2008-12-29
    • Tomokazu AbeKatumasa IdeaAkihiko MorikawaKentarou Kanae
    • Tomokazu AbeKatumasa IdeaAkihiko MorikawaKentarou Kanae
    • B29C44/08
    • B29C44/0415
    • The thermoplastic elastomer composition of the present invention comprises a thermoplastic elastomer which includes an ethylene.α-olefin copolymer and a crystalline polyethylene resin, wherein the crystalline polyethylene resin constitutes a three-dimensional network structure in a matrix formed by the ethylene.α-olefin copolymer, an organic or inorganic blowing agent and a nucleating agent, wherein the thermoplastic elastomer has a melt flow rate of 5 g/10 min or more at a temperature of 230° C. and a load of 10 kg, and a melt tension of 3.0 gf or more at a temperature of 210° C. and a pulling rate of 2 m/min. Also the foam injection molding method of the present invention is a method including injecting the above-mentioned composition into a cavity space of a metal mold and then expanding the cavity space to foam by opening the metal mold at a mold opening rate of 0.05 to 0.4 mm/sec.
    • 本发明的热塑性弹性体组合物包括含有乙烯-α-烯烃共聚物和结晶聚乙烯树脂的热塑性弹性体,其中结晶聚乙烯树脂构成由乙烯-α-烯烃形成的基体中的三维网状结构 共聚物,有机或无机发泡剂和成核剂,其中热塑性弹性体在230℃的温度和10kg的载荷下的熔体流动速率为5g / 10min以上,熔体张力为 在210℃的温度下为3.0gf以上,拉伸速度为2m / min。 此外,本发明的泡沫注塑成型方法是将上述组合物注入到金属模的空腔内,然后以0.05〜0.4的开模率打开金属模将空腔膨胀成泡沫的方法 毫米/秒。